We experimentally investigate the dynamic behavior of the combustion instability in a lean premixed gas-turbine combustor from the viewpoint of nonlinear dynamics. A nonlinear time series analysis in combination with a surrogate data method clearly reveals that as the equivalence ratio increases, the dynamic behavior of the combustion instability undergoes a significant transition from stochastic fluctuation to periodic oscillation through low-dimensional chaotic oscillation. We also show that a nonlinear forecasting method is useful for predicting the short-term dynamic behavior of the combustion instability in a lean premixed gas-turbine combustor, which has not been addressed in the fields of combustion science and physics. © 2011 American Institute of Physics.
CITATION STYLE
Gotoda, H., Nikimoto, H., Miyano, T., & Tachibana, S. (2011). Dynamic properties of combustion instability in a lean premixed gas-turbine combustor. Chaos, 21(1). https://doi.org/10.1063/1.3563577
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